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Utilizing settling tests to design a conventional upflow settling tank modified with inclined plates

机译:利用沉降测试来设计使用斜板改造的常规上流式沉降池

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This paper examines the relationships between the turbidity removal efficiency (TRE), the surface overflow rate (SOR), and the detention time (D _t) in settling column and jar tests, as well as the performance of a conventional upflow settling tank modified with inclined plates in the upper zone. The experimental results showed that the SOR obtained from the flocculent settling column test can be increased by 30% and the corresponding D _t can be decreased by 75% with a variation in TRE of less than 7%. The TRE of flocculent settling in the jar test coincided with the performance of the modified upflow settling tank, while the results of the settling column test were slightly different. For plain settling, the SOR obtained from jar and settling column tests should be divided by 3 and 2, respectively, before possible use in the design of the modified upflow settling tank. Two empirical models with 1.0% error in the TRE predictions were developed to facilitate the design of the modified upflow settling tank.
机译:本文研究了沉降塔和广口瓶测试中浊度去除效率(TRE),表面溢流率(SOR)和滞留时间(D _t)之间的关系,以及采用这种改进的传统上流式沉降池的性能。上部区域中的倾斜板。实验结果表明,从絮凝沉降柱试验获得的SOR可以提高30%,相应的D _t可以降低75%,而TRE的变化小于7%。罐式试验中絮凝沉降的TRE与改进的上流式沉降池的性能一致,而沉降柱测试的结果则略有不同。对于普通沉降,在可能用于改进的上流式沉降池的设计之前,应将广口瓶和沉降柱测试获得的SOR分别除以3和2。开发了两个在TRE预测中误差为1.0%的经验模型,以简化改进的上流式沉淀池的设计。

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